Peng Quan, Wang Ruoyu, Zhao Zilin, Lin Shihong, Liu Ying, Dong Dianyu, Wang Zheng, He Yiman, Zhu Yuzhang, Jin Jian, Jiang Lei
College of Chemistry, Chemical Engineering and Materials Science, Innovation Center for Chemical Science & Jiangsu Key Laboratory of Advanced Functional Polymer Design and Application, Soochow University, Suzhou, 215123, PR China.
i-Lab, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, Suzhou, 215123, PR China.
Nat Commun. 2024 Mar 20;15(1):2505. doi: 10.1038/s41467-024-46887-4.
Achieving high selectivity of Li and Mg is of paramount importance for effective lithium extraction from brines, and nanofiltration (NF) membrane plays a critical role in this process. The key to achieving high selectivity lies in the on-demand design of NF membrane pores in accordance with the size difference between Li and Mg ions, but this poses a huge challenge for traditional NF membranes and difficult to be realized. In this work, we report the fabrication of polyamide (PA) NF membranes with ultra-high Li/Mg selectivity by modifying the interfacial polymerization (IP) process between piperazine (PIP) and trimesoyl chloride (TMC) with an oil-soluble surfactant that forms a monolayer at oil/water interface, referred to as OSARIP. The OSARIP benefits to regulate the membrane pores so that all of them are smaller than Mg ions. Under the solely size sieving effect, an exceptional Mg rejection rate of over 99.9% is achieved. This results in an exceptionally high Li/Mg selectivity, which is one to two orders of magnitude higher than all the currently reported pressure-driven membranes, and even higher than the microporous framework materials, including COFs, MOFs, and POPs. The large enhancement of ion separation performance of NF membranes may innovate the current lithium extraction process and greatly improve the lithium extraction efficiency.
实现锂和镁的高选择性对于从卤水中有效提取锂至关重要,而纳滤(NF)膜在这一过程中起着关键作用。实现高选择性的关键在于根据锂离子和镁离子的尺寸差异按需设计纳滤膜孔,但这对传统纳滤膜构成了巨大挑战且难以实现。在这项工作中,我们报告了通过用一种在油/水界面形成单分子层的油溶性表面活性剂修饰哌嗪(PIP)和均苯三甲酰氯(TMC)之间的界面聚合(IP)过程来制备具有超高锂/镁选择性的聚酰胺(PA)纳滤膜,即油溶性表面活性剂辅助界面聚合(OSARIP)。OSARIP有助于调节膜孔,使所有膜孔都小于镁离子。在单纯的尺寸筛分效应下,实现了超过99.9%的优异镁截留率。这导致了极高的锂/镁选择性,比目前报道的所有压力驱动膜高一个到两个数量级,甚至高于包括共价有机框架(COF)、金属有机框架(MOF)和多孔有机聚合物(POP)在内的微孔框架材料。纳滤膜离子分离性能的大幅提高可能会革新当前的锂提取工艺并大大提高锂提取效率。